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Exhaust Heat Recovery System Study in Internal Combustion Engines

机译:内燃机的废热回收系统研究

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Strict regulations exist in different countries with respect to vehicular emissions by their respective government bodies requiring automakers to design fuel-efficient vehicles. Fuel economy and carbon emission are the main factors affecting these regulations. In this competitive industry to make fuel efficient vehicles and reduce Green House Gas (GHG) emissions in internal combustions has led to various developments. Exhaust Heat Recovery System (EHRS) plays a vital role in improving powertrain efficiency. In this system, heat rejected by the engine is reused to heat the vehicle fluids faster (for example, engine coolant, engine oil, etc.) correspondingly reducing harmful gas emissions. In internal combustion engines, generally only 25% of the fuel energy is converted into useful power output and approximately 40% of it is lost in exhaust heat. Certain studies show that by using the EHRS, the power output can be increased to 40% and the heat loss can be reduced to as much as 25%. The purpose of this study is to make use of this lost energy and convert most of it into useful energy. The thermodynamic properties and fuel consumed during the warmup period were analyzed to measure the improvement in the engine efficiency. The design was implemented on a Briggs and Stratton Junior 206cc engine. This system includes the use of heat exchangers. The main goal of this study is to develop a robust EHRS design and compare it with the baseline engine configuration to see the thermal and fuel economy improvement during warm up.
机译:各自的政府机构要求汽车制造商设计燃油效率的车辆,不同国家的严格规定存在严格的法规。燃油经济性和碳排放是影响这些法规的主要因素。在这种竞争力的行业中,使燃料效率和减少内燃中的绿色房屋气体(GHG)排放导致了各种发展。废热回收系统(EHRS)在提高动力总成效率方面起着至关重要的作用。在该系统中,由发动机拒绝的热量被重复使用,以相应地减少有害气体排放的速度更快地加热车辆流体(例如发动机冷却剂,发动机油等)。在内燃机中,通常仅25%的燃料能量被转换为有用的功率输出,其中大约40%的排气损失。某些研究表明,通过使用EHRS,功率输出可以增加到40%,并且热损失可以减少到25%。本研究的目的是利用这种丢失的能量,并将大部分转换为有用的能量。分析了预热期间消耗的热力学性质和燃料,以测量发动机效率的提高。该设计是在Briggs和Stratton Junior 206CC发动机上实施的。该系统包括使用热交换器。本研究的主要目标是开发强大的EHRS设计,并将其与基线发动机配置进行比较,以便在热身期间看到热量和燃油经济性的改善。

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